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Screening siderophore producing bacteria as potential biological control agent for fungal rice pathogens in Thailand

机译:筛选产生铁载体的细菌作为泰国真菌性水稻病原体的潜在生物防治剂

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Rice (Oryza sativa) is a staple food in Thailand and, in addition, feeds around one half of the world’s population. Therefore, diseases of rice are of special concern. Rice is destroyed by 2 main pathogens, Fusarium oxysporum and Pyricularia oryzae the causative agents of root rot and blast in rice respectively. These pathogens result in low grain yield in Thailand and other Southeast Asian countries. Soil samples were taken from paddy fields in Northern Thailand and bacteria were isolated using the soil dilution plate method on Nutrient agar. Isolation yielded 216 bacterial isolates which were subsequently tested for their siderophore production and effectiveness in inhibiting mycelial growth in vitro of the rice pathogenic fungi; Alternaria sp., Fusarium oxysporum, Pyricularia oryzae and Sclerotium sp., the causal agent of leaf spot, root rot, blast and stem rot in rice. It was found that 23% of the bacteria isolated produced siderophore on solid plating medium and liquid medium, In dual culture technique, the siderophore producing rhizobacteria showed a strong antagonistic effect against the Alternaria (35.4%), Fusarium oxysporum (37.5%), Pyricularia oryzae (31.2%) and Sclerotium sp. (10.4%) strains tested. Streptomyces sp. strain A 130 and Pseudomonas sp. strain MW 2.6 in particular showed a significant higher antagonistic effect against Alternaria sp. while Ochrobactrum anthropi D 5.2 exhibited a good antagonistic effect against F. oxysporum. Bacillus firmus D 4.1 inhibited P. oryzae and Kocuria rhizophila 4(2.1.1) strongly inhibited Sclerotium sp. P. aureofaciens AR 1 was the best siderophore producer overall and secreted hydroxamate type siderophore. This strain exhibits an in vitro antagonistic effect against Alternaria sp., F. oxysporum and P. oryzae. Siderophore production in this isolate was maximal after 15 days and at an optimal temperature of 30°C, yielding 99.96 ± 0.46 μg ml?1 of siderophore. The most effective isolates were identified by biochemical tests and molecular techniques as members of the Genus Bacillus, Pseudomonas and Kocuria including B. firmus D 4.1, P. aureofaciens AR1 and Kocuria rhizophila 4(2.1.1). The study demonstrated antagonistic activity towards the target pathogens discussed and are thus potential agents for biocontrol of soil borne diseases of rice in Thailand and other countries.
机译:大米(Oryza sativa)是泰国的主食,此外,它的饲料还占世界人口的一半。因此,水稻的疾病特别令人关注。水稻被稻瘟病菌和稻瘟病菌这两种主要病原体破坏,水稻是根腐病和稻瘟病的病原体。这些病原体导致泰国和其他东南亚国家的粮食减产。从泰国北部的稻田中获取土壤样品,并使用土壤稀释板法在营养琼脂上分离细菌。分离得到216种细菌分离物,随后对其铁载体的产生和在体外抑制水稻病原性真菌的菌丝体生长的有效性进行测试。水稻中的叶斑病,根腐病,稻瘟病和茎腐病的病原体是链格孢菌,尖孢镰刀菌,稻瘟病菌和菌核菌。结果发现,分离出的细菌中有23%在固体平板培养基和液体培养基上产生了铁载体。在双重培养技术中,产生根瘤菌的铁载体显示出对交链孢菌(35.4%),尖孢镰刀菌(37.5%),黄萎病菌的强烈拮抗作用。稻(31.2%)和菌核菌属。 (10.4%)菌株经过测试。链霉菌菌株A 130和假单胞菌sp。菌株MW 2.6尤其显示出对链格孢菌的明显更高的拮抗作用。拟人O菜D 5.2对尖孢镰刀菌具有良好的拮抗作用。牢固的芽孢杆菌D 4.1抑制米曲霉,而根瘤菌4(2.1.1)强烈抑制菌核菌。 P. aureofaciens AR 1总体上是最好的铁载体生产者,并分泌异羟肟酸酯型铁载体。该菌株表现出对链格孢菌,尖孢镰刀菌和米曲霉的体外拮抗作用。该分离物中的铁载体生成在15天后,在最佳温度30°C时最大,产生99.96±0.46μgml?1 的铁载体。通过生化测试和分子技术,鉴定出最有效的分离株为芽孢杆菌属,假单胞菌属和科库里亚属,包括坚硬芽孢杆菌D 4.1,金黄色葡萄球菌AR1和嗜性科库里亚菌4(2.1.1)。该研究表明对所讨论的目标病原体具有拮抗作用,因此是泰国和其他国家/地区对水稻土传疾病进行生物防治的潜在药物。

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